首页> 外文期刊>Proceedings of the International Association of Hydrological Sciences >Impacts of the thawing-freezing process on runoff generation in the Sources Area of the Yellow River on the northeastern Qinghai-Tibet Plateau
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Impacts of the thawing-freezing process on runoff generation in the Sources Area of the Yellow River on the northeastern Qinghai-Tibet Plateau

机译:青藏高原东北部黄河源区解冻过程对径流产生的影响

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In cold regions, precipitation, air temperature and snow cover significantly influence soil water, heat transfer, the freezing-thawing processes of the active soil layer, and runoff generation. Hydrological regimes of the world's major rivers in cold regions have changed remarkably since the 1960s, but the mechanisms underlying the changes have not yet been fully understood. Using the basic physical processes for water and heat balances and transfers in snow covered soil, a water-heat coupling model for snow cover and its underlying soil layers was established. We found that freezing-thawing processes can affect the thickness of the active layer, storage capacity for liquid water, and subsequent surface runoffs. Based on calculations of thawing-freezing processes, we investigated hydrological processes at Qumalai. The results show that the water-heat coupling model can be used in this region to provide an understanding of the local movement of hydrological regimes.
机译:在寒冷地区,降水,气温和积雪会严重影响土壤水分,热传递,活跃土壤层的冻融过程以及径流的产生。自1960年代以来,寒冷地区的世界主要河流的水文状况发生了显着变化,但变化的机理尚未得到充分了解。利用积雪土壤中水和热的平衡和传递的基本物理过程,建立了积雪及其下层土壤水热耦合模型。我们发现冻融过程会影响活性层的厚度,液态水的存储能力以及随后的表面径流。基于解冻过程的计算,我们调查了库玛莱的水文过程。结果表明,水热耦合模型可用于该地区,以了解水文状况的局部运动。

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